Genes
A gene is the basic physical and functional unit of heredity: a stretch of DNA that carries information a cell can use. Many genes hold the instructions for making a protein, which the cell reads in two steps — transcription into messenger RNA, then translation into a chain of amino acids — while many others make no protein and instead help control other genes. People usually carry two copies of each gene, one from each parent, and slightly different versions of a gene are called alleles.
Genes, variants and the human gene count
A gene is the basic physical and functional unit of heredity. Protein-coding genes are expressed by transcription to mRNA and translation on ribosomes, but a substantial share of genes produce no protein and instead regulate other genes. Diploid humans carry two copies of each gene; sequence differences between copies define alleles.
- Germline (inherited) variants are present in the egg or sperm and so appear in virtually every cell of the child.
- Somatic variants arise during life — for example from ultraviolet damage or DNA-copying errors during cell division — and cannot be passed on.
- Most variants do not lead to disease; those that do are uncommon in the general population.
- The finished 2004 human genome sequence (Build 35) had 2.85 billion nucleotides and about 99% euchromatic coverage.
- Protein-coding gene estimates moved from 20,000–25,000 at the end of the Human Genome Project to about 19,900 today.
Full explanation — the complete reference version every reading depth is based on
What a gene is
A gene is a particular stretch of DNA that works as a unit of heredity. The NIH's MedlinePlus Genetics describes it as the basic physical and functional unit of heredity. Some genes are instructions for building a protein; many others never become protein at all and instead help switch other genes on and off. Human genes vary enormously in length, from a few hundred DNA base pairs to more than two million.
- Genes are made of DNA and sit on chromosomes inside the cell.
- People typically have two copies of each gene — one inherited from each parent.
- Versions of the same gene that differ slightly in their DNA sequence are called alleles.
- Most genes are the same in everyone; less than 1 percent of them differ slightly from person to person.
- The human genome holds about 19,900 protein-coding genes.
From gene to protein
Using a protein-coding gene is called gene expression, and it happens in two steps. In transcription, the information in the gene's DNA is copied into a related molecule, messenger RNA (mRNA), inside the nucleus. In translation, the mRNA is read in the cytoplasm by a ribosome, three nucleotides at a time. Each three-letter group, a codon, usually stands for one amino acid, and transfer RNA brings the matching amino acids so the protein grows one link at a time until a stop codon is reached. This one-way flow of information — DNA to RNA to protein — is often called the central dogma of molecular biology.
Because each codon is three nucleotides and usually specifies one amino acid, a chain of n amino acids needs 3n coding nucleotides of mRNA, plus three more for the stop codon. (Our own arithmetic from the codon rule.)
Worked example
A small protein has 150 amino acids. Its coding mRNA must contain 3 × 150 = 450 nucleotides to specify those amino acids, and the stop codon adds 3 more, so the ribosome reads 453 nucleotides from the first codon to the end of the stop codon.
Genes are switched on and off
Almost every cell in your body carries the same set of genes, yet a nerve cell and a muscle cell look and behave very differently. The reason is gene regulation: each cell turns on only a fraction of its genes at any moment and keeps the rest switched off, and different cell types switch on different sets during development.
When genes change
A permanent change in a gene's DNA sequence is called a gene variant (the older word is mutation). Variants inherited from a parent are in virtually every cell of the body. Somatic variants appear during a person's life — for example after damage from ultraviolet light or a copying error when a cell divides — and exist only in some cells, so they cannot be passed on to children.
Where this connects
Genes build directly on DNA, and they are the units passed from parent to offspring in inheritance. Differences between alleles are the raw material that natural selection acts on, and the immune system's huge range of antibodies is produced by rearranging and mutating gene segments.
How we know
Thomas Hunt Morgan's work on the role of chromosomes in heredity earned the 1933 Nobel Prize in Physiology or Medicine. Between 1990 and 2003 the international Human Genome Project sequenced the human genome, and the finished sequence published in 2004 covered about 99% of the gene-rich (euchromatic) part of the genome. That work estimated 20,000–25,000 protein-coding genes; later studies refined the figure to about 19,900.
Interactive 3D scene
Explore the DNA double helix in an interactive 3D scene showing real Watson-Crick base pairing and B-DNA structural geometry, with base-pair highlighting and a sequence view.
Explore the DNA double helix in 3D — genes are particular stretches of this molecule.
Assumptions and limits
- 'Two copies of each gene' is the typical case: one copy comes from each parent, but a variant can be present in only some of a person's cells.
- The three-nucleotides-per-amino-acid rule applies to the coding part of an mRNA; a codon usually, not always, stands for one particular amino acid.
- A gene count is a best estimate tied to how well the genome has been sequenced and annotated, so it should always be quoted with its source and date.
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Connections
Guided learning path
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Related concepts
- DNA — Part of
- Cell — Related to
- Natural selection — Related to
- Immune system — Related to
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Sources and methodology
- A gene is the basic physical and functional unit of heredity and is made of DNA; some genes carry instructions for making proteins, while many others do not code for proteins and instead help control other genes. (awaiting scientific review)
- What is a gene? (MedlinePlus Genetics) — Government or standards body
- In humans, genes range in size from a few hundred DNA base pairs to more than 2 million base pairs. (awaiting scientific review)
- What is a gene? (MedlinePlus Genetics) — Government or standards body
- The human genome contains about 19,900 protein-coding genes; the Human Genome Project (1990–2003) had estimated between 20,000 and 25,000. (awaiting scientific review)
- What is a gene? (MedlinePlus Genetics) — Government or standards body
- The finished human genome sequence published in 2004 (Build 35) contained 2.85 billion nucleotides, covered about 99% of the euchromatic genome and indicated only 20,000–25,000 protein-coding genes. (awaiting scientific review)
- People typically have two copies of each gene, one inherited from each parent, and forms of the same gene that differ slightly in their DNA sequence are called alleles. (awaiting scientific review)
- What is a gene? (MedlinePlus Genetics) — Government or standards body
- Most genes are the same in all people; only a small number — less than 1 percent of the total — are slightly different between people. (awaiting scientific review)
- What is a gene? (MedlinePlus Genetics) — Government or standards body
- A protein-coding gene is expressed in two steps: transcription copies the gene's DNA information into messenger RNA (mRNA) in the nucleus, and translation, in the cytoplasm, uses a ribosome to read the mRNA one codon (three nucleotides) at a time. (awaiting scientific review)
- How do genes direct the production of proteins? (MedlinePlus Genetics) — Government or standards body
- Each codon of three mRNA nucleotides usually codes for one particular amino acid, and protein assembly continues until the ribosome reaches a stop codon that does not code for an amino acid. (awaiting scientific review)
- How do genes direct the production of proteins? (MedlinePlus Genetics) — Government or standards body
- Each cell expresses (turns on) only a fraction of its genes at any given time, and the process of turning genes on and off is called gene regulation. (awaiting scientific review)
- Can genes be turned on and off in cells? (MedlinePlus Genetics) — Government or standards body
- A gene variant (formerly called a mutation) is a permanent change in the DNA sequence of a gene; inherited (germline) variants are present in virtually every cell, while somatic variants arise during life in some cells and cannot be passed to the next generation. (awaiting scientific review)
- What is a gene variant and how do variants occur? (MedlinePlus Genetics) — Government or standards body
- Most gene variants do not lead to the development of disease. (awaiting scientific review)
- What is a gene variant and how do variants occur? (MedlinePlus Genetics) — Government or standards body
- Thomas Hunt Morgan received the 1933 Nobel Prize in Physiology or Medicine for his discoveries concerning the role played by the chromosome in heredity. (awaiting scientific review)
- The Nobel Prize in Physiology or Medicine 1933 (Thomas Hunt Morgan) — Other (unclassified)
Claims marked “awaiting scientific review” cite the sources listed but have not yet been signed off by a scientific reviewer.
Content status: published 1 October 2026.
- Scientific review: this version has not yet been signed off by a scientific reviewer.
- The Advanced explanation has not yet been reviewed for age suitability.